1[1]Wright MD, Henkle KJ, Mitchell GF etal. An immunogenic Mr 23,000 integral membrane protein of Schistosoma mansoni worms that closely re sembles a humah tumor-associated antigen[J]. Jummunol, 1990, 144(8) :3195.
2[2]Kaplan-ss. Effect of nitric oxide on staphylococcal killing and interactive effect with superoxide[J]. Infect-Immun, 1996, 64(1):69.
3[3]Scharton-Kersten-T. Toxoplasma gondii: evidence for interleukin-12-de pendent and-independent pathways of interferon-gamma production in duced by an attenuated parasite strain[J]. EXP-Parastitol, 1996, 84(2):102.
4[4].Igietseme-JU. Molecular mechanism of T-cell control of Chlamydia in mice: role of nitric oxide in vivo[J]. Immunology,1996,88(1) :1.
5[5]Venkatesan-P. A comparison of mucosal inflammatory responses to Giar dia muris in resistant B10 and susceptible BALB/c mice[J]. Parasite Immunol, 1997,19(3): 137.
6[6]Xie-Q. Different susceptibility of three clinically isolated strains of Cryp tococcus neoformans to the fungicidal effects of reactive nitrogen and oxy gen intermediates: possible relationships with virulence [J]. Microbiol Immunol, 1997, 41(9) :725.
7[7]Paludan-SR. Effect of IL-4 and IL-13 on IFN-gamma-induced production of nitric oxide in mouse macrophages infected with herpes simplex virus type 2[J]. FEBS-Lett. 1997, 414(1) :61.
8[8]Paludan-SR. Interleukin-4-mediated inhibition of nitric oxide production in interferon-gamma-treated and virus-infected macrophages[J]. Scand-J Immund. 1999, 49(2): 169.
9[9]Burgner-D. Nitric Oxide and infectious diseases[J]. Arch-Dis-Child,1999, 81(2): 185.
10[10]Matsushima H. Lymphotoxin inhibits chlamydia pneumoniae growth in HP-2 cells[J]. Infect Immun, 1999, 67(6) :3175.